CN203041907U - Vacuum thermal-insulation hot tank assembly for water dispenser - Google Patents
Vacuum thermal-insulation hot tank assembly for water dispenser Download PDFInfo
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- CN203041907U CN203041907U CN 201220596794 CN201220596794U CN203041907U CN 203041907 U CN203041907 U CN 203041907U CN 201220596794 CN201220596794 CN 201220596794 CN 201220596794 U CN201220596794 U CN 201220596794U CN 203041907 U CN203041907 U CN 203041907U
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- fixed
- water dispenser
- lower cover
- housing
- cover
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Abstract
The utility model relates to a vacuum thermal-insulation hot tank assembly for a water dispenser. The hot tank comprises a cylindrical shell, wherein the upper end of the shell is fixedly connected with an upper cover; the lower end of the shell is fixedly connected with a lower cover; the upper cover is provided with a water inlet pipe, a hot water outlet pipe and an exhaust pipe; the lower cover is provided with a drain pipe and an electrical heated pipe; the shell comprises an inner stainless steel layer and an outer stainless steel layer; sealing space clamped between the inner layer and the outer layer is a vacuum layer; a water storage cavity is formed among the inner layer, the upper cover and the lower cover; the water inlet pipe, the hot water outlet pipe, the drain pipe and the exhaust pipe are communicated with the water storage cavity; and the hot tank structurally comprises the upper cover and the lower cover, thereby the hot tank is convenient to install and dismantle, and the inside of the hot tank is convenient to clean. Meanwhile, due to the vacuum layer, the outward diffusion speed of the heat of hot water in the hot tank is alleviated, the thermal-insulation effect of the hot tank is improved, the working times of the electrical heated pipe are reduced, and the electrical energy consumption is effectively lowered.
Description
Technical field
The utility model relates to water dispenser equipment, relates in particular to the heating and heat-insulating device that a kind of water dispenser is used.
Background technology
Water dispenser obtains in market extensively and rapidly promoting with its firing rate advantage fast, easy to use.Water dispenser generally uses heat jar heating drinking water and is incubated a period of time at present, to make things convenient for user's drinking hot water.
There is following problem at the employed heat jar of water dispenser in the market:
(1) heat insulation effect is relatively poor
The employed heat of some water dispenser jar is used single layer enclosure on the market, perhaps uses common heat-preservation cotton to be incubated, and heat-insulating property is bad, causes water dispenser often hydronic, waste electric power resource, and inconvenient user drinking hot water at any time.
(2) inconvenient installation and removal
Disclose the double-deck hot jar structure of a kind of cylindrical shape in utility model patent ZL201020114344.2, comprised top layer and internal layer, the seal cavity between top layer and the internal layer is vacuum layer, and electrothermal tube is located in the water storage cavity.But upper end, lower end and the barrel of this heat jar are one-body molded, are not easy to installation and removal, also are not easy to clear up the incrustation scale of accumulating in the heat jar, and what service time for a long time can be to human body is healthy unfavorable.
The utility model content
The purpose of this utility model is to provide a kind of heating and heat-insulating device for water dispenser, makes the heat insulation effect of water dispenser improve, and is convenient to simultaneously install, dismantles and cleaning.
For achieving the above object, the utility model provides following technical scheme:
A kind of hot bottle in drinking machine comprises barrel-type casing.Fixedlying connected with a loam cake in the upper end of housing, fixedlys connected with a lower cover in the lower end of housing.On be covered with water inlet pipe, hot outlet pipe and blast pipe, be covered with down drainpipe and electrothermal tube.Housing comprises internal layer and skin, and internal layer is vacuum layer with outer folded seal cavity.Form a water storage cavity between internal layer and loam cake, the lower cover, water inlet pipe, hot outlet pipe, drainpipe and blast pipe are communicated with water storage cavity.
Hot tank shell and connected mode between the loam cake are that screw thread is fixed, bolting, welding is fixed or the last swivelling cover that is threaded by columnar and described housing upper end is fixed.Compress sealing by first sealing ring between housing and the loam cake.
Hot tank shell and connected mode between the lower cover are that screw thread is fixed, bolting, welding is fixed or the following rotating seat that is threaded by columnar and described housing lower end is fixed.Compress sealing by second sealing ring between housing and the lower cover.
Under be covered with temperature controller and a Thermal Cutoffs, electrothermal tube and Thermal Cutoffs are fixedly connected on lower cover respectively, temperature controller is fixedly connected on lower cover by a temperature control stator.Electrothermal tube is electrically connected with temperature controller, Thermal Cutoffs.
The heat jar also comprises a fixed cover, and fixed cover is fixedlyed connected with housing, and housing is fixed in the water dispenser by fixed cover.
Internal layer and the skin of hot tank shell are stainless steel layer.
The utility model beneficial effect compared with prior art is:
(1) the utility model adopts barrel-type casing to add the frame mode of loam cake, lower cover, can reduce the threat to health so that hot jar installation and removal are convenient to clear up the heat jar inner incrustation scale of accumulating.
(2) in the utility model, form the vacuum layer of sealing between the internal layer of cylindrical shell and the skin, make the hot water heat of hot tank stores be difficult for being lost to space outerpace, can be incubated lastingly, and then reduce the work number of times of electrothermal tube, effectively reduce the consumption of electric energy.
Description of drawings
Fig. 1 is the utility model first embodiment Assembly part explosive view
Fig. 2 is the utility model first embodiment sectional arrangement drawing
Fig. 3 is the utility model second embodiment Assembly part explosive view
Fig. 4 is the utility model the 3rd embodiment Assembly part explosive view
Fig. 5 is the utility model the 4th embodiment Assembly part explosive view
Fig. 6 is the utility model the 4th embodiment sectional arrangement drawing
The specific embodiment
In order to more fully understand technology contents of the present utility model, below in conjunction with specific embodiment the technical solution of the utility model is further introduced and explanation.
The utility model first embodiment, as shown in Figure 1, blast pipe 102, water inlet pipe 104 and hot outlet pipe 103 are welded on the loam cake 105, and loam cake 105 uses bolt to be connected and fixed and is installed in housing 113 upper ends, uses first sealing ring 106 to compress sealing between the two.Electrothermal tube 107 is fixedly mounted on the lower cover 108, temperature control stator 109 and drainpipe 110 are welded on the lower cover 108 simultaneously, with bolt temperature controller 112 is fixed on the temperature control stator 109, in order to control the heating work of insulation thermal tank, simultaneously, Thermal Cutoffs 111 is insured a stator 120 near being fixed on the lower cover 108, is used for preventing the insulation thermal tank dry combustion method.Lower cover 108 uses bolt to be connected and fixed and is installed in housing 113 lower ends, uses second sealing ring 114 to compress sealing between the two.Fixed cover 116 is locked by retainer plate 115 with housing 113.During assembling, drainpipe 110 1 ends pass the osculum of fixed cover 115, reach fixed cover 115 outsides, and the heat jar is fixedly mounted on the water dispenser by fixed cover 115.As shown in Figure 2, form a water storage cavity between internal layer 118 and loam cake 105, the lower cover 108, seal cavity folded between the housing internal layer 118 and outer 117 is vacuum layer 119.
During the work of heat jar, cold water fills up water storage cavity by water inlet pipe 104, electrothermal tube 107 energising heating cold water, and blast pipe 110 is the steam discharge of distributing.Vacuum layer 119 has reduced the hot water heat in the water storage cavity and has spread outward, can improve heat preservation effect.During heat-obtaining water, hot water is discharged by hot outlet pipe 103.When needs dismounting heat jar, can be earlier by drainpipe 110 with the water emptying in the heat jar, and then dismounting heat jar fixed cover 115 and loam cake 105, lower cover 108.
The utility model second embodiment, as shown in Figure 3, blast pipe 202, water inlet pipe 203 and hot outlet pipe 204 are welded on the loam cake 205, and threaded cap 201 is fixedlyed connected loam cake 205 by being threaded with housing 208 upper ends, use sealing ring 206 to compress sealing between the two.Electrothermal tube 207 is fixedly mounted on the lower cover 209, temperature control stator 210 and drainpipe 211 are welded on the lower cover 209 simultaneously, with bolt temperature controller 213 is fixed on the temperature control stator 210, in order to control the heating work of insulation thermal tank, simultaneously, Thermal Cutoffs 212 is insured a stator 215 near being fixed on the lower cover 209, is used for preventing the insulation thermal tank dry combustion method.Lower cover 209 is welded on housing 208 lower ends, and fixed cover 214 and housing 208 are by being welded to connect.During assembling, drainpipe 211 1 ends pass the osculum of fixed cover 214, reach fixed cover 214 outsides, and the heat jar is fixedly mounted on the water dispenser by fixed cover 214.
The utility model the 3rd embodiment, as shown in Figure 4, blast pipe 301, water inlet pipe 302 and hot outlet pipe 303 are welded on the loam cake 304, and loam cake 304 is fixed by welding in housing 306 upper ends.Electrothermal tube 305 is fixedly mounted on the lower cover 307, temperature control stator 308 and drainpipe 309 are welded on the lower cover 307 simultaneously, with bolt temperature controller 311 is fixed on the temperature control stator 308, in order to control the heating work of insulation thermal tank, simultaneously, Thermal Cutoffs 310 stator 313 that is insured covers near being fixed on down, is used for preventing the insulation thermal tank dry combustion method.Lower cover 307 is welded on housing 306 lower ends, and fixed cover 312 and housing 306 are by being welded to connect.During assembling, drainpipe 309 1 ends pass the osculum of fixed cover 312, reach fixed cover 312 outsides, and the heat jar is fixedly mounted on the water dispenser by fixed cover 312.
The utility model the 4th embodiment, as shown in Figure 5 and Figure 6, folded seal cavity is vacuum layer 420 between the internal layer 419 of housing 409 and the skin 418 of housing 409.Blast pipe 406, water inlet pipe 407 and hot outlet pipe 405 are welded on the loam cake 408, and last gasket seal 404 is set on the loam cake 408.Housing 409 is fixed by the columnar last swivelling cover 402 that is threaded with housing 409 upper ends with loam cake 408.Last swivelling cover 402 is fixed on housing 409 upper ends by being threaded, both are by 403 sealings of first sealing ring.The internal layer 419 of last swivelling cover 402 and housing 409 will go up gasket seal 404 and loam cake 408 compresses the upper end that is positioned at housing 409.Temperature controller 401 runs through swivelling cover 402, goes up gasket seal 404 and loam cake 408, up to housing 409 water storage cavities.Electrothermal tube 410 is fixedly mounted on the lower cover 411, lower seal pad 413 sheathed with lower cover 411 on.Housing 409 is fixed by the columnar following rotating seat 415 that is threaded with housing 409 lower ends with lower cover 411.Following rotating seat 415 is fixed on housing 409 lower ends by being threaded, both are by 414 sealings of second sealing ring.Following rotating seat 415 compresses Thermal Cutoffs 416 and temperature control 417 and is positioned lower cover 411 belows.The internal layer 419 of following rotating seat 415 and housing 409 compresses the lower end that is positioned at housing 409 with lower seal pad 413 and lower cover 411.Drainpipe 412 is fixedly welded on the lower cover 411, and drainpipe 412 1 ends pass down the osculum of rotating seat 415, reaches the outside.The heat jar is fixedly mounted on the water dispenser by following rotating seat 415.
The above only further specifies technology contents of the present utility model with embodiment; so that the reader is more readily understood; but do not represent embodiment of the present utility model and only limit to this, any technology of doing according to the utility model is extended or recreation, all is subjected to protection of the present utility model.
Claims (8)
1. water dispenser vacuum insulation thermal canister assembly, comprise barrel-type casing, it is characterized in that: fixedly connected with a loam cake in the upper end of described housing, fixedly connected with a lower cover in the lower end of described housing, be covered with water inlet pipe, hot outlet pipe and blast pipe on described, be covered with drainpipe and electrothermal tube under described, described housing comprises internal layer and skin, internal layer is vacuum layer with outer folded seal cavity, form a water storage cavity between described internal layer and described loam cake, the lower cover, described water inlet pipe, hot outlet pipe, drainpipe and blast pipe are communicated with described water storage cavity.
2. water dispenser vacuum insulation thermal canister assembly as claimed in claim 1 is characterized in that: described housing and connected mode between the described loam cake are that screw thread is fixed, bolting, welding is fixed or the last swivelling cover that is threaded by columnar and described housing upper end is fixed.
3. water dispenser vacuum insulation thermal canister assembly as claimed in claim 2 is characterized in that: compress sealing by first sealing ring between described housing and the loam cake.
4. water dispenser vacuum insulation thermal canister assembly as claimed in claim 3 is characterized in that: described housing and connected mode between the described lower cover are that screw thread is fixed, bolting, welding is fixed or the following rotating seat that is threaded by columnar and described housing lower end is fixed.
5. water dispenser vacuum insulation thermal canister assembly as claimed in claim 4 is characterized in that: compress sealing by second sealing ring between described housing and the lower cover.
6. water dispenser vacuum insulation thermal canister assembly as claimed in claim 5, it is characterized in that: be covered with temperature controller and a Thermal Cutoffs under described, described electrothermal tube and described Thermal Cutoffs are fixedly connected on described lower cover respectively, described temperature controller is fixedly connected on described lower cover by a temperature control stator, and described electrothermal tube is electrically connected with described temperature controller, described Thermal Cutoffs.
7. as each described water dispenser vacuum insulation thermal canister assembly of claim 1 to 6, it is characterized in that: also comprise a fixed cover, described fixed cover is fixedlyed connected with described housing, and housing is fixed in the water dispenser by fixed cover.
8. water dispenser vacuum insulation thermal canister assembly as claimed in claim 7, it is characterized in that: described internal layer and skin are stainless steel layer.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN 201220596794 CN203041907U (en) | 2012-11-13 | 2012-11-13 | Vacuum thermal-insulation hot tank assembly for water dispenser |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN 201220596794 CN203041907U (en) | 2012-11-13 | 2012-11-13 | Vacuum thermal-insulation hot tank assembly for water dispenser |
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CN203041907U true CN203041907U (en) | 2013-07-10 |
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CN 201220596794 Expired - Fee Related CN203041907U (en) | 2012-11-13 | 2012-11-13 | Vacuum thermal-insulation hot tank assembly for water dispenser |
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Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN108720616A (en) * | 2018-08-06 | 2018-11-02 | 上海六滴智能科技有限公司 | A kind of water feeding and draining device of portable tape storage water pipe function |
CN109222660A (en) * | 2017-07-11 | 2019-01-18 | 佛山市顺德区美的饮水机制造有限公司 | Hot tank and water dispenser |
CN110063656A (en) * | 2019-05-07 | 2019-07-30 | 苏州华爱电子有限公司 | A kind of split type heating cylinder of vacuum heat-insulation water dispenser |
-
2012
- 2012-11-13 CN CN 201220596794 patent/CN203041907U/en not_active Expired - Fee Related
Cited By (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN109222660A (en) * | 2017-07-11 | 2019-01-18 | 佛山市顺德区美的饮水机制造有限公司 | Hot tank and water dispenser |
CN108720616A (en) * | 2018-08-06 | 2018-11-02 | 上海六滴智能科技有限公司 | A kind of water feeding and draining device of portable tape storage water pipe function |
CN108720616B (en) * | 2018-08-06 | 2024-01-16 | 上海六滴智能科技有限公司 | Portable water supply and drainage device with water containing pipe function |
CN110063656A (en) * | 2019-05-07 | 2019-07-30 | 苏州华爱电子有限公司 | A kind of split type heating cylinder of vacuum heat-insulation water dispenser |
CN110063656B (en) * | 2019-05-07 | 2024-05-28 | 苏州华爱电子有限公司 | Split type vacuum heat insulation water dispenser hot cylinder |
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Legal Events
Date | Code | Title | Description |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20130710 Termination date: 20181113 |